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24-epibrassinolide restores nitrogen metabolism of pigeon pea under saline stress

机译:24-表油菜素内酯可恢复盐胁迫下豌豆的氮代谢

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Background Several studies have shown that brassinosteroids attenuate the effects of salt stress. However, nothing is known about their effects on amino acid transport, nor the effects of these hormones on nitrate uptake under saline conditions. This study set out to determine the effects of 24-epibrassinolide, at concentrations of 10-7 M and 0.5 × 10-9 M, and clotrimazole (inhibitor of brassinosteroid synthesis), at 10-4 M, on nitrate uptake and metabolism in plants of C. cajan (L.) Millsp, cultivar C11, growing under salinity. The following aspects were analyzed: levels of proteins, amino acids, nitrate, nitrate reductase of roots and the composition of xylem sap amino acids. Results Salinity reduced the proportion of N-transport amino acids ASN (the major component), GLU, ASP and GLN. The effect of the hormone in reducing the adverse effects of salt was related to the reestablishment (totally or partially) of the proportions of GLU, ASN and GLN, transported in the xylem and to the small but significant increase in uptake of nitrate. Increased nitrate uptake, induced by 24- epibrassinolide, was associated with a higher activity of nitrate reductase together with greater levels of free amino acids and soluble proteins in roots of plants cultivated under saline conditions. Conclusion The decline in several components of nitrogen metabolism, induced by salt, was attenuated by 24-epibrassinolide application and accentuated by clotrimazole, indicating the importance of brassinosteroid synthesis for plants growing under salinity.
机译:背景技术多项研究表明,油菜素类固醇可减轻盐胁迫的影响。然而,关于它们在氨基酸条件下对氨基酸转运的影响,以及这些激素对硝酸盐吸收的影响,一无所知。这项研究着手确定浓度为10-7 M和0.5×10-9 M的24-表油菜素内酯和浓度为10-4 M的克霉唑对植物中硝酸盐吸收和代谢的影响。在盐度下生长的C. cajan(L.)Millsp品种C11。分析了以下方面:蛋白质,氨基酸,硝酸盐,根的硝酸盐还原酶的水平以及木质部树液氨基酸的组成。结果盐度降低了N转运氨基酸ASN(主要成分),GLU,ASP和GLN的比例。激素在减少盐的不良影响方面的作用与木质部中运输的GLU,ASN和GLN的比例(全部或部分)的重建以及硝酸盐吸收量的小幅但显着增加有关。由24-表油菜素内酯诱导的硝酸盐吸收增加与硝酸盐还原酶的活性较高,以及在盐条件下培养的植物根部中较高水平的游离氨基酸和可溶性蛋白质有关。结论施用24-表油菜素内酯可减轻盐引起的氮代谢的几个组成部分的下降,而克霉唑则可加剧这种变化,这表明油菜素类固醇合成对于盐分下生长的植物很重要。

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